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Integration of isothermal amplification with quantum dot-based fluorescence resonance energy transfer for simultaneous detection of multiple microRNAs

机译:用量子点基荧光共振能量传递与多量子点的荧光共振能量转移相同检测多个微润松

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MicroRNAs (miRNAs) are small non-coding RNAs that regulate important physiological processes, and their dysregulation is associated with various human diseases. Simultaneous sensitive detection of multiple miRNAs may facilitate early clinical diagnosis. In this research, we demonstrate for the first time the integration of hyperbranched rolling circle amplification (HRCA) with quantum dot (QD)-based fluorescence resonance energy transfer (FRET) for the simultaneous detection of multiple microRNAs with a single-color QD as the donor and two fluorescent dyes as the acceptors. We used miR-21 and miR-221 as target miRNAs. We designed two circular templates which may specifically hybridize with miR-21 and miR-221, respectively, for the initiation of the HRCA reaction. The products of the HRCA reaction may hybridize with both capture probes and reporter probes to form the biotinylated acceptor-labeled sandwich hybrids. The resultant sandwich hybrids can assemble on the surface of the QD, enabling efficient FRET between the QD and the acceptors, with the Cy3 signal indicating the presence of miR-21 and the Texas Red signal indicating the presence of miR-221. This assay has significant advantages of simplicity and low cost. The HRCA reaction can be performed under isothermal conditions with the same reverse primer for different target miRNAs, and the products of the HRCA reaction for both miR-21 and miR-221 can specifically hybridize with the same capture probes. This assay exhibits excellent specificity and high sensitivity with a detection limit of 7.2 × 10 ~(?16) M for miR-21 and 1.6 × 10 ~(?17) M for miR-221, and it can be used for simultaneous detection of multiple miRNAs in human cancer cells, holding great potential in biomedical research and clinical diagnosis.
机译:MicroRNA(miRNA)是小的非编码RNA,其调节重要的生理过程,并且它们的失调与各种人类疾病有关。同时敏感检测多个miRNA可以促进早期的临床诊断。在这项研究中,我们首次证明了具有量子点(QD)的超支滚动圆扩增(HRCA)的集成,用于同时检测单色QD的多个MicroRNA的多个MicroRNAS的荧光共振能量转移(FRET)。供体和两个荧光染料作为受体。我们使用miR-21和miR-221作为目标miRNA。我们设计了两个圆形模板,其可以分别与miR-21和miR-221具体杂交,用于开始HRCA反应。 HRCA反应的产物可以与捕获探针和报告探针杂交,以形成生物素化的受体标记的夹心杂种。所得到的夹心混合动力车可以在QD的表面上组装,使得QD和受护者之间的有效褶皱,具有指示MIR-21的存在和指示MIR-221的存在的德克萨斯红信号的CY3信号。该测定具有简单性和成本低的显着优点。 HRCA反应可以在等温条件下进行,具有与不同靶MiRNA相同的反向引物,并且MiR-21和MiR-221的HRCA反应的产物可以用相同的捕获探针特别杂交。该测定表现出优异的特异性和高灵敏度,对于miR-21和miR-21和1.6×10〜(α17)m的检出限为7.2×10〜(Δ16)m,可用于同时检测人类癌细胞中的多个miRNA,在生物医学研究和临床诊断中持有巨大潜力。

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